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Thermal delay provided by floors containing layers that incorporate expanded cork granule waste

机译:由包含膨胀软木废料颗粒的层的地板提供的热延迟

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摘要

This paper reports the computation of the thermal delay provided by concrete floors built with layers of cork and lightweight screed that incorporate expanded cork granule waste. The heat transfer by conduction across these multilayer systems is simulated analytically under unsteady boundary conditions.The thermal delay is computed for multilayer concrete floors with varying numbers of layers and layer thicknesses. The mass density and thermal conductivity of the various materials were determined experimentally. Given its heterogeneity, the specific heat of the lightweight screed was obtained indirectly using both the experimental results and the analytical model.The results obtained show the potential of these composites in applications for increasing the thermal performance of concrete floors, in particular the thermal delay and thermal resistance. The results show that the contribution of the insulating lightweight screed material's properties to thermal delay is more relevant in systems composed of few layers. The constructive solutions composed of a greater number of layers present higher thermal delay value.
机译:本文报告了由软木和轻质熨平板组成的混凝土地板的热延迟的计算结果,这些软木和轻质熨平板结合了膨胀的软木颗粒废物。分析了在不稳定边界条件下通过这些多层系统进行传导的热传递,计算了层数和层厚度不同的多层混凝土地板的热延迟。通过实验确定了各种材料的质量密度和热导率。考虑到其不均一性,使用实验结果和分析模型间接获得了轻质熨平板的比热,所得结果表明了这些复合材料在提高混凝土地板热性能,特别是热延迟和热稳定性方面的潜力。热阻。结果表明,在由几层组成的系统中,隔热轻质熨平板材料的特性对热延迟的影响更为显着。由更多层组成的建设性解决方案具有更高的热延迟值。

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